Instituto de Microelectrónica de Barcelona, Centro Nacional de Microelectrónica, CSIC (IMB-CNM-CSIC), Campus UAB, 08193 Bellaterra, Barcelona, Spain.
Talanta. 2010 Apr 15;81(1-2):208-12. doi: 10.1016/j.talanta.2009.11.059. Epub 2009 Dec 3.
H(+)-ion sensitive ISFETs with photocured polyurethane-based polymer membranes with three different neutral carrier ionophores and four different plasticizers have been studied in 0.05 M TRIS-HCl solutions and in background solutions containing 140 mM of Na(+) ions. The optimised membrane composition showing the best selectivity contains 2.2-2.5 wt.% of the ionophore (tridodecylamine), 36-41 wt.% of a plasticizer, and only 10 mol% of a lipophilic salt KTClPhB. The optimal ionophore/lipophilic salt ratio obtained in this work differs significantly from theoretically recommended for pH-sensitive ion-selective membranes. It is assumed that this is due to the participation of the ionophore (tertiary amine) and lipophilic additives (tetrachlorophenylborate anion) in additional photochemical reactions occurring during irradiation of the membrane matrix. Sensors with the optimised membrane composition showed sufficient sensor selectivity in front of sodium ions for clinical and biomedical applications and the lifetime of more than 3 months.
已研究了具有三种不同中性载体离子载体和四种不同增塑剂的光固化聚氨酯基聚合物膜的 H(+)离子敏感 ISFET,分别在 0.05 M TRIS-HCl 溶液和含有 140 mM Na(+)离子的背景溶液中进行了研究。在最佳条件下,显示出最佳选择性的优化膜组成包含 2.2-2.5 wt.%的离子载体(三癸胺)、36-41 wt.%的增塑剂和仅 10 mol%的亲脂盐 KTClPhB。与 pH 敏感型离子选择性膜的理论推荐值相比,本工作中获得的最佳离子载体/亲脂盐比有显著差异。据推测,这是由于离子载体(叔胺)和疏水性添加剂(四氯苯基硼酸根阴离子)参与了膜基质辐照过程中发生的额外光化学反应。具有优化膜组成的传感器在钠离子面前表现出足够的传感器选择性,可用于临床和生物医学应用,并且使用寿命超过 3 个月。